The structure of calcyclin reveals a novel homodimeric fold for s100 ca2+-binding proteins

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Abstract

The S100 calcium-binding proteins are implicated as effectors in calcium-mediated signal transduction pathways. The three-dimensional structure of the S100 protein calcyclin has been determined in solution in the apo state by NMR spectroscopy and a computational strategy that incorporates a systematic docking protocol. This structure reveals a symmetric homodimeric fold that is unique among calcium-binding proteins. Dimerization is mediated by hydrophobic contacts from several highly conserved residues, which suggests that the dimer fold identified for calcyclin will serve as a structural paradigm for the S100 subfamily of calcium-binding proteins. © 1995 Nature Publishing Group.

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Potts, B. C. M., Smith, J., Akkeu, M., Macke, T. J., Okazaki, K., Hidaka, H., … Chazin, W. J. (1995). The structure of calcyclin reveals a novel homodimeric fold for s100 ca2+-binding proteins. Nature Structural Biology, 2(9), 790–796. https://doi.org/10.1038/nsb0995-790

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